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Force ripple suppression in iron-core permanent magnet linear motors using an adaptive dither

机译:使用自适应抖动抑制铁芯永磁直线电机中的力纹波

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This paper presents the design and realization of an adaptive dither to reduce the force ripple in an iron-core permanent magnet linear motor (PMLM). A composite control structure is used, consisting of three components: a simple feedforward component, a PID feedback component and an adaptive feedforward compensator (AFC). The first two components are designed based on a dominant linear model of the motor. The AFC generates a dither signal with the motivation to eliminate or suppress the inherent force ripple, thus facilitating smooth precise motion while uncompromising on the maximum force achievable. An analysis is given in the paper to show the parameter convergence. Computer simulations and real-time experimental results verify the effectiveness of the proposed scheme for high precision motion trajectory tracking using the PMLM.
机译:本文介绍了一种自适应抖动的设计和实现,以减少铁芯永磁直线电机(PMLM)中的力纹波。使用的复合控制结构由三个组件组成:简单的前馈组件,PID反馈组件和自适应前馈补偿器(AFC)。前两个组件是基于电动机的主导线性模型设计的。 AFC产生抖动信号,其动机是消除或抑制固有力波动,从而有助于平稳,精确地运动,同时不影响可获得的最大力。分析表明参数收敛。计算机仿真和实时实验结果验证了所提方案对使用PMLM进行高精度运动轨迹跟踪的有效性。

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